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冬凌草甲素对阿霉素致心肌毒性的保护作用及机制。

Protective effects and mechanisms of lycorine against adriamycin-induced cardiotoxicity.

机构信息

Department of Cardiothoracic Surgery, Central Theater Command General Hospital of Chinese People's Liberation Army, 627 Wuluo Road, Wuhan 430070, China.

Department of Hematology, The First Affiliated Hospital of Xi'an Jiaotong University, 277 Yanta West Road, Xi'an 710061, China.

出版信息

Phytomedicine. 2022 Jul 20;102:154178. doi: 10.1016/j.phymed.2022.154178. Epub 2022 May 17.

Abstract

BACKGROUND

Adriamycin (ADR), a high-efficiency, broad-spectrum anthraquinone chemotherapeutic agent, is currently used to treat various malignant tumors and can lead to cumulative, dose-dependent, and irreversible cardiotoxicity. Lycorine (LYC) is a benzyl phenethylamine alkaloid that exerts remarkable therapeutic effects on cancers and sepsis.

PURPOSE

However, researchers have not yet elucidated whether LYC exerts protective effects against cardiotoxicity induced by ADR and the possible molecular mechanisms.

DESIGN

This study established ADR injury models in vitro and in vivo to explore the effects of LYC against cardiotoxicity induced by ADR. The effects of LYC on blood biochemical parameters, cardiac parameters and structure, ADR-related pathophysiological processes, and the SIRT1/PPARγ signal pathway in ADR-injured models, were analyzed using a series of experimental methods.

RESULTS

LYC significantly improved survival rate, blood biochemical parameters (LDH, CK, and BUN), cardiac parameters (SV and CO), mitochondrial dysfunction, and ameliorated oxidative stress, apoptosis, and myocardial fibrosis in ADR-injured mice (p<0.05). Moreover, LYC obviously increased cell viability and reduced oxidative stress, apoptosis, and mitochondrial dysfunction in ADR-injured cells (p<0.05). Furthermore, this study confirmed that the protective effect of LYC on ADR-induced cardiotoxicitymight be mediated by the SIRT1/PPARγ signaling pathway. These results revealed that the beneficial role of LYC on cardiotoxicity induced by ADR were mediated via regulating SIRT1/PPARγ signaling for the first time.

CONCLUSION

These discoveries may provide a theoretical basis for the exploitation of LYC as a potential cardioprotective drug candidate due to its multiple biological functions to reduce ADR-induced cardiotoxicity, but further preclinical and clinical studies are still needed.

摘要

背景

阿霉素(ADR)是一种高效、广谱蒽醌类化疗药物,目前用于治疗各种恶性肿瘤,但可导致累积、剂量依赖性和不可逆的心脏毒性。石蒜碱(LYC)是一种苄基苯乙胺类生物碱,对癌症和脓毒症具有显著的治疗作用。

目的

然而,研究人员尚未阐明 LYC 是否对 ADR 诱导的心脏毒性具有保护作用及其可能的分子机制。

设计

本研究在体外和体内建立了 ADR 损伤模型,以探讨 LYC 对 ADR 诱导的心脏毒性的作用。采用一系列实验方法分析 LYC 对 ADR 损伤模型中血液生化参数、心脏参数和结构、ADR 相关病理生理过程以及 SIRT1/PPARγ 信号通路的影响。

结果

LYC 显著提高了 ADR 损伤小鼠的存活率、血液生化参数(LDH、CK 和 BUN)、心脏参数(SV 和 CO)、线粒体功能以及氧化应激、细胞凋亡和心肌纤维化程度(p<0.05)。此外,LYC 明显增加了 ADR 损伤细胞的活力,降低了氧化应激、细胞凋亡和线粒体功能障碍(p<0.05)。此外,本研究证实 LYC 对 ADR 诱导的心脏毒性的保护作用可能是通过 SIRT1/PPARγ 信号通路介导的。这些结果首次表明,LYC 通过调节 SIRT1/PPARγ 信号通路对 ADR 诱导的心脏毒性具有有益作用。

结论

这些发现可能为开发 LYC 作为一种潜在的心脏保护药物候选物提供理论依据,因为它具有多种生物学功能,可以降低 ADR 诱导的心脏毒性,但仍需要进一步的临床前和临床研究。

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